Clearing a path for light through non-Hermitian media

Author:

Dave Utsav D.1ORCID,Bhatt Gaurang R.2ORCID,Rodrigues Janderson R.1ORCID,Datta Ipshita3ORCID,Lipson Michal2ORCID

Affiliation:

1. Columbia Nano Initiative , 5798 Columbia University , New York , NY , USA

2. Department of Electrical Engineering & Columbia Nano Initiative , 5798 Columbia University , New York , NY , USA

3. Ginzton Laboratory , Stanford University , Stanford , CA , USA

Abstract

Abstract The performance of all active photonic devices today is greatly limited by loss. Here, we show that one can engineer a low loss path in a metal-clad lossy multi-mode waveguide while simultaneously achieving high-performance active photonic devices. We leverage non-Hermitian systems operating beyond the exceptional point to enable the redistribution of losses in a multi-mode photonic waveguide. Consequently, our multi-mode waveguide offers low propagation losses for fundamental mode while other higher order modes experience prohibitively high losses. Furthermore, we show an application of this non-Hermitian waveguide platform in designing power-efficient thermo-optic phase shifters with significantly faster response times than conventional silicon-based thermo-optic phase shifters. Our device achieves a propagation loss of less than 0.02 dB μm−1 for our non-Hermitian waveguide-based phase shifters with high performance efficiency of P π τ = 19.1 mW μs. In addition, our phase shifters have significantly faster response time (rise/fall time), τ ≈ 1.4 μs, compared to traditional silicon based thermo-optic phase shifters.

Funder

Defense Advanced Research Projects Agency

Office of Science

Semiconductor Research Corporation

Publisher

Walter de Gruyter GmbH

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